Optimization of Cooling Gallery Based on Heat Transfer and Strength of Piston

被引:0
作者
Lei J. [1 ]
Yang Y. [1 ,2 ]
Deng X. [1 ]
Dai G. [2 ]
Yang Z. [2 ]
Wu T. [2 ]
机构
[1] Kunming University of Science and Technology, Yunnan Province Key Laboratory of Internal Combustion Engines, Kunming
[2] Yun Nei Power Co., Ltd., Kunming
来源
Qiche Gongcheng/Automotive Engineering | 2020年 / 42卷 / 03期
关键词
Diesel engine; Heat transfer; Internal cooling gallery; Piston; Strength;
D O I
10.19562/j.chinasae.qcgc.2020.03.007
中图分类号
学科分类号
摘要
Internal cooling gallery can strengthen the heat transfer of piston greatly, but also affect the strength of piston head. In order to systemically study the effects of the structural and positional parameters on the heat transfer and structural strength of piston, and optimize the type of cooling gallery and its position in piston, the piston of a high pressure common rail diesel engine is taken as the object of study, a liquid-solid coupled heat-transfer finite element model of piston is built based on its temperature field measurement, and the heat transfer and structural strength of piston are analyzed. On this basis, the orthogonal design of experiment is adopted to analyze the effects of three factors, i.e. the type, the distance from its geometric center to the top plane of piston and the surficial area of cooling gallery, on the heat transfer and structural strength of piston. The results show that the effects of three factors have no significant difference, but in which the surficial area has the most influence, the distance from its geometric center to the top plane of piston has slightly less influence and its type has the least effect. Appropriately reducing the surficial area of cooling gallery can improve the thermal load of piston head and the stress concentration in cooling gallery, oil return hole and pin boss, and reduce deformations. © 2020, Society of Automotive Engineers of China. All right reserved.
引用
收藏
页码:323 / 329
页数:6
相关论文
共 3 条
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[2]  
Torregrosa A.J., Broatch A., Olmeda P., Et al., A contribution to film coefficient estimation in piston cooling galleries, Experimental Thermal & Fluid Science, 34, 2, pp. 142-151, (2010)
[3]  
Lv J., Wang P., Bai M., Et al., Experimental visualization of gas-liquid two-phase flow during reciprocating motion, Applied Thermal Engineering, 79, pp. 63-73, (2015)